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Whole-Vehicle modelling of exhaust energy recovery on a diesel-electric hybrid bus

机译:柴电混合动力客车排气能量回收的整车建模

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摘要

Hybrid vehicles can use energy storage systems to disconnect the engine from the driving wheels of the vehicle. This enables the engine to be run closer to its optimum operating condition, but fuel energy is still wasted through the exhaust system as heat. The use of a turbogenerator on the exhaust line addresses this problem by capturing some of the otherwise wasted heat and converting it into useful electrical energy.This paper outlines the work undertaken to model the engine of a diesel-electric hybrid bus, coupled with a hybrid powertrain model which analysed the performance of a hybrid vehicle over a drive-cycle. The distribution of the turbogenerator power was analysed along with the effect on the fuel consumption of the bus. This showed that including the turbogenerator produced a 2.4% reduction in fuel consumption over a typical drive-cycle.The hybrid bus generator was then optimised to improve the performance of the combined vehicle/engine package and the turbogenerator was then shown to offer a 3.0% reduction in fuel consumption. The financial benefits of using the turbogenerator were also considered in terms of fuel savings for operators. For an average bus, a turbogenerator could reduce fuel costs by around £1200 per year.
机译:混合动力车辆可以使用储能系统将发动机与车辆的驱动轮断开。这使发动机可以更接近其最佳运行状态运行,但是燃料能量仍然作为热量浪费在排气系统中。在排气管路上使用涡轮发电机通过捕获一些原本浪费的热量并将其转化为有用的电能来解决该问题。本文概述了为柴油-电动混合动力巴士的发动机建模以及混合动力所做的工作动力总成模型,该模型分析了混合动力汽车在整个驾驶周期内的性能。分析了涡轮发电机的功率分配以及对公交车燃油消耗的影响。这表明,在典型的驾驶循环中,包括涡轮发电机在内的燃油消耗降低了2.4%,然后对混合动力公交发电机进行了优化,以提高车辆/发动机组合组件的性能,然后证明涡轮发电机提供了3.0%的油耗。减少燃油消耗。还考虑到使用涡轮发电机的经济利益,以节省运营商的燃料。对于一辆普通公共汽车,涡轮发电机每年可以减少大约1200英镑的燃料成本。

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